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Helvacı, Cahit, Oyman, Tolga, Gündoğan, İbrahim, Sözbilir, Hasan, Parlak, Osman, Kadir, Selahattin, Güven, Necip (2018) Mineralogy and genesis of the Ni–Co lateritic regolith deposit of the Çaldağ area (Manisa, western Anatolia), Turkey. Canadian Journal of Earth Sciences, 55 (3) 252-271 doi:10.1139/cjes-2017-0184

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Reference TypeJournal (article/letter/editorial)
TitleMineralogy and genesis of the Ni–Co lateritic regolith deposit of the Çaldağ area (Manisa, western Anatolia), Turkey
JournalCanadian Journal of Earth Sciences
AuthorsHelvacı, CahitAuthor
Oyman, TolgaAuthor
Gündoğan, İbrahimAuthor
Sözbilir, HasanAuthor
Parlak, OsmanAuthor
Kadir, SelahattinAuthor
Güven, NecipAuthor
Year2018 (March)Volume55
Issue3
PublisherCanadian Science Publishing
DOIdoi:10.1139/cjes-2017-0184Search in ResearchGate
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Mindat Ref. ID485448Long-form Identifiermindat:1:5:485448:1
GUID0
Full ReferenceHelvacı, Cahit, Oyman, Tolga, Gündoğan, İbrahim, Sözbilir, Hasan, Parlak, Osman, Kadir, Selahattin, Güven, Necip (2018) Mineralogy and genesis of the Ni–Co lateritic regolith deposit of the Çaldağ area (Manisa, western Anatolia), Turkey. Canadian Journal of Earth Sciences, 55 (3) 252-271 doi:10.1139/cjes-2017-0184
Plain TextHelvacı, Cahit, Oyman, Tolga, Gündoğan, İbrahim, Sözbilir, Hasan, Parlak, Osman, Kadir, Selahattin, Güven, Necip (2018) Mineralogy and genesis of the Ni–Co lateritic regolith deposit of the Çaldağ area (Manisa, western Anatolia), Turkey. Canadian Journal of Earth Sciences, 55 (3) 252-271 doi:10.1139/cjes-2017-0184
In(2018, March) Canadian Journal of Earth Sciences Vol. 55 (3) Canadian Science Publishing
Abstract/Notes The Çaldağ Ni–Co deposit is characterized by a reddish brown oxide lateritic regolith, containing residual Ni deposit formed by the intense tropical weathering of peridotites. Nickel–Co ore is associated with transported ferricrete during the late Paleocene – middle Eocene, represented by colloform Fe oxides and residual lateritization during the Oligocene. The lateritic regoliths are developed over dunitic ultramafic rocks and consist mainly of smectite, berthierine, kaolinite, gypsum, pyrite, takovite, and pecoraite. These units were examined using polarized-light microscopy, X-ray diffraction, scanning and transmission electron microscopy, and geochemical methods. Mineralogical zonation from the base of the profile upwards has the following zones: ultramafic bedrocks, serpentinized ultramafic rocks (saprock), saprolite, carbonate- and sulfide-bearing zone, ferruginous saprolite zone, and silcrete. In addition, Fe oxides, smectite and opal-CT, and quartz increase towards the surface, whereas olivine, pyroxene, and serpentine decrease upwards in response to chemical weathering. Nickel–Co mineralization associated with Fe oxides and smectitic clays formed under wet and dry conditions, respectively, as a result of an increased Fe2O3 + Al2O3 + Ni + Co/MgO ratio. Field observations and mineralogical and geochemical analyses reveal that the smectite formed under basic conditions was controlled by multistage chemical weathering of ultramafic and volcanic rocks and by the concentrations of Si, Al, Fe, and Mg. Locally, concentrations of S in conjunction with Fe and Ca resulted in precipitation of goethite–hematite, gypsum, and pyrite in dissolution voids in association with smectite under acidic conditions that developed in a well-drained system.


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